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Micro/Nano Devices for Blood Analysis, Volume II

Micro/Nano Devices for Blood Analysis, Volume II

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The development of micro- and nanodevices for blood analysis continues to be a growing interdisciplinary subject that demands the careful integration of different research fields. Following the success of the book “Micro/Nano Devices for Blood Analysis”, we invited more authors from the scientific community to participate in and submit their research for a second volume. Researchers from different areas and backgrounds cooperated actively and submitted high-quality research, focusing on the latest advances and challenges in micro- and nanodevices for diagnostics and blood analysis; micro- and nanofluidics; technologies for flow visualization and diagnosis; biochips, organ-on-a-chip and lab-on-a-chip devices; and their applications to research and industry.

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Keywords

  • 3D model
  • 3D printing
  • air compliance effect
  • air-compressed syringe (ACS)
  • automatic methods
  • biomicrofluidics
  • blood cells
  • blood flow
  • blood molecules
  • blood plasma filtration
  • blood velocity fields
  • blood viscoelasticity
  • blood viscosity
  • chip extract
  • coflowing streams
  • colorectal cancer
  • composite molding
  • crossover frequency
  • Diagnostics
  • dielectric spectra
  • dielectrophoresis
  • Drug Screening
  • Economics, finance, business & management
  • electrophysiological properties
  • Erythrocyte sedimentation rate (ESR)
  • fourier transform infrared (FTIR) spectroscopy
  • functional group
  • Image analysis
  • Industry & industrial studies
  • Information technology industries
  • interface
  • interface in co-flowing streams
  • lab-on-a-chip
  • linear differential equation
  • Malaria
  • manual methods
  • Media, information & communication industries
  • micro-nano structure
  • micro-particle image velocimetry
  • microfluidic device
  • Microfluidics
  • n/a
  • optical filters
  • particle tracking
  • patient-derived organoids
  • RBC aggregation
  • red blood cells
  • reflectance
  • small caliber blood vessel
  • spectrophotometry
  • T-shaped microfluidic channel
  • TFCalc
  • tissue repair
  • two approximate factors
  • viscoelasticity
  • wake or recirculation formation

Links

DOI: 10.3390/books978-3-0365-3228-8

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